Park Sun-Mi, Gönen Mithat, Vu Ly, Minuesa Gerard, Tivnan Patrick, Barlowe Trevor S, Taggart James, Lu Yuheng, Deering Raquel P, Hacohen Nir, Figueroa Maria E, Paietta Elisabeth, Fernandez Hugo F, Tallman Martin S, Melnick Ari, Levine Ross, Leslie Christina, Lengner Christopher J, Kharas Michael G
J Clin Invest. 2015 Mar 2;125(3):1286-98. doi: 10.1172/JCI78440. Epub 2015 Feb 9.
Leukemia stem cells (LSCs) are found in most aggressive myeloid diseases and contribute to therapeutic resistance. Leukemia cells exhibit a dysregulated developmental program as the result of genetic and epigenetic alterations. Overexpression of the RNA-binding protein Musashi2 (MSI2) has been previously shown to predict poor survival in leukemia. Here, we demonstrated that conditional deletion of Msi2 in the hematopoietic compartment results in delayed leukemogenesis, reduced disease burden, and a loss of LSC function in a murine leukemia model. Gene expression profiling of these Msi2-deficient animals revealed a loss of the hematopoietic/leukemic stem cell self-renewal program and an increase in the differentiation program. In acute myeloid leukemia patients, the presence of a gene signature that was similar to that observed in Msi2-deficent murine LSCs correlated with improved survival. We determined that MSI2 directly maintains the mixed-lineage leukemia (MLL) self-renewal program by interacting with and retaining efficient translation of Hoxa9, Myc, and Ikzf2 mRNAs. Moreover, depletion of MLL target Ikzf2 in LSCs reduced colony formation, decreased proliferation, and increased apoptosis. Our data provide evidence that MSI2 controls efficient translation of the oncogenic LSC self-renewal program and suggest MSI2 as a potential therapeutic target for myeloid leukemia.
白血病干细胞(LSCs)存在于大多数侵袭性髓系疾病中,并导致治疗耐药性。由于基因和表观遗传改变,白血病细胞表现出发育程序失调。先前已表明,RNA结合蛋白Musashi2(MSI2)的过表达可预测白血病患者的不良生存。在此,我们证明,在小鼠白血病模型中,造血区室中Msi2的条件性缺失会导致白血病发生延迟、疾病负担减轻以及LSC功能丧失。对这些Msi2缺陷动物的基因表达谱分析显示,造血/白血病干细胞自我更新程序丧失,分化程序增加。在急性髓系白血病患者中,与Msi2缺陷小鼠LSCs中观察到的基因特征相似的基因特征的存在与生存改善相关。我们确定,MSI2通过与Hoxa9、Myc和Ikzf2 mRNA相互作用并维持其有效翻译,直接维持混合谱系白血病(MLL)自我更新程序。此外,LSCs中MLL靶标Ikzf2的缺失减少了集落形成,降低了增殖,并增加了凋亡。我们的数据提供了证据,表明MSI2控制致癌LSC自我更新程序的有效翻译,并表明MSI2是髓系白血病的潜在治疗靶点。